PaperPanorama

Nuclear Theory·nucl-th

Friday·January 8, 2021

7 papers1 primary·6 cross-listed

  1. 02

    Higher-form and (non-)Stückelberg symmetries in non-equilibrium systems

    Michael J. Landry🇺🇸

    We investigate the role of higher-form symmetries in non-equilibrium systems from the perspective of effective actions defined on the Schwinger-Keldysh contour. To aid our investigation, we extend the coset construction to account for -form symmetries at zero and finite temperature. Additionally we investigate how, out of equilibrium, symmetries of the action need not lead to meaningful conserved currents at the level of the equations of motion. For reasons that will become apparent, we term symmetries with conserved currents Stückelberg symmetries and those without meaningful conserved currents non-Stückelberg symmetries (NSS). Ordinarily any action constructed exclusively from building-blocks furnished by the coset construction will have Stückelberg symmetries associated with each symmetry generator. To expand the set of systems describable by the coset construction, we devise a method by which NSS generators can be included as well. While 0-form NSS are quite common in non-equilibrium effective actions, the introduction of -form NSS is novel. We use these -form NSS to investigate spontaneous symmetry breaking of -form symmetries. We find that in non-equilibrium systems, whether or not a symmetry appears spontaneously broken can depend on the time-scale over which the system is observed. Finally, using our new coset construction, we formulate actions for a number of systems including chemically reacting fluids, Yang-Mills theory, Chern-Simons theory, magnetohydrodynamic systems, and dual superfluid and solid theories.

    hep-thcond-mat.othergr-qcnucl-th20 citations
  2. 03

    Quark distribution inside a pion in many-flavor (2 + 1)-dimensional QCD using lattice computations: UV listens to IR

    Nikhil Karthik🇺🇸

    We study the changes in the short-distance quark structure of the Nambu-Goldstone boson when the long-distance symmetry-breaking scales are depleted controllably. We achieve this by studying the valence Parton Distribution Function (PDF) of pion in 2+1 dimensional two-color QCD, with the number of massless quarks as the tunable parameter that slides the theory from being strongly broken for to the conformal window for , where the theory is gapped by the fixed finite volume. We perform our study non-perturbatively using lattice simulations with flavors of nearly massless two-component Wilson-Dirac sea quarks and employ the leading-twist formalism (LaMET/SDF) to compute the PDF of pion at a fixed valence mass. We find that the relative variations in the first few PDF moments are only mild compared to the changes in decay constant, but the shape of the reconstructed -dependent PDF itself dramatically changes from being broad in the scale-broken sector to being sharply peaked in the near-conformal region, best reflected in PDF shape observables such as the cumulants.

    hep-lathep-thnucl-thPRD(2021)·18 citations
  3. 04

    Forward scattering in a thermal Plasma

    Varun Vaidya🇺🇸

    I examine the regime of forward scattering of an energetic particle in a Plasma medium in thermal equilibrium. Treating the particle as an open quantum system interacting with a bath, I look at the time evolution of the reduced density matrix of the system. The kinematic and dynamical time scales that emerge can exist in several possible hierarchies which can lead to different EFT formulations. I show that in certain hierarchies, it becomes necessary to account for arbitrary number of coherent exchanges between the system and the bath going beyond the independent scattering paradigm. Analytic results are obtained in certain limits and the formalism is applied for the measurement of transverse momentum broadening of a quark in a Quark Gluon Plasma medium.

    hep-phnucl-th7 citations
  4. 05

    Net-baryon number fluctuations

    C. Schmidt🇩🇪 · J. Goswami🇩🇪 · G. Nicotra🇩🇪 · F. Ziesché🇩🇪 · P. Dimopoulos🇮🇹 · F. Di Renzo🇮🇹 · S. Singh🇮🇹 · K. Zambello🇮🇹

    The appearance of large, none-Gaussian cumulants of the baryon number distribution is commonly discussed as a signal for the QCD critical point. We review the status of the Taylor expansion of cumulant ratios of baryon number fluctuations along the freeze-out line and also compare QCD results with the corresponding proton number fluctuations as measured by the STAR Collaboration at RHIC. To further constrain the location of a possible QCD critical point we discuss poles of the baryon number fluctuations in the complex plane. Here we use not only the Taylor coefficients obtained at zero chemical potential but perform also calculations of Taylor expansion coefficients of the pressure at purely imaginary chemical potentials.

    hep-lathep-phnucl-exnucl-thActa Phys. Pol. B Proc. Suppl. 14, 241 (2…·19 citations
  5. 06

    Shape changes in the mirror nuclei Kr and Se

    K. Wimmer🇪🇸 · W. Korten🇫🇷 · P. Doornenbal🇯🇵 · T. Arici🇩🇪 · P. Aguilera🇨🇱 · A. Algora🇪🇸 · T. Ando🇯🇵 · H. Baba🇯🇵 · B. Blank🇫🇷 · A. Boso🇮🇹 · S. Chen🇯🇵 · A. Corsi🇫🇷 and 26 other authors

    We studied the proton-rich nucleus Kr through inelastic scattering at intermediate energies in order to extract the reduced transition probability, . Comparison with the other members of the isospin triplet, Br and Se, studied in the same experiment, shows a deviation from the expected linearity of the electromagnetic matrix elements as a function of . At present, no established nuclear structure theory can describe this observed deviation quantitatively. This is the first violation of isospin symmetry at this level observed in the transition matrix elements. A heuristic approach may explain the anomaly by a shape change between the mirror nuclei Kr and Se contrary to the model predictions.

    nucl-exnucl-thPRL(2021)·37 citations
  6. 07

    Nucleon-nucleon potential from skyrmion dipole interactions

    Derek Harland · Chris Halcrow

    We derive the nucleon-nucleon interaction from the Skyrme model using second order perturbation theory and the dipole approximation to skyrmion dynamics. Unlike previous derivations, our derivation accounts for the non-trivial kinetic and potential parts of the skyrmion-skyrmion interaction lagrangian and how they couple in the quantum calculation. We derive the eight low energy interaction potentials and compare them with the phenomenological Paris model, finding qualitative agreement in seven cases.

    hep-thnucl-thNPB(2021)·5 citations

Affiliations

first authorsco-authorsvia INSPIRE